123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758759760761762763764765766767768769770771772773774775776777778779780781782783784785786787788789790791792793794795796797798799800801802803804805806807808809810811812813814815816817818819820821822823824825826827828829830831832833834835836837838839840841842843844845846847848849850851852853854855856857858859860861862863864865866867868869870871872873874875876877878879880881882883884885886887888889890891892893894895896897898899900901902903904905906907908909910911912913914915916917918919920921922923924925926927928929930931932933934935936937938939940941942943944945946947948949950951952953954955956957958959960961962963964965966967968969970971972973974975976977978979980981982983984985986987988989990991992993994995996997998999100010011002100310041005100610071008100910101011101210131014101510161017101810191020102110221023102410251026102710281029103010311032103310341035103610371038103910401041104210431044104510461047104810491050105110521053105410551056105710581059106010611062106310641065106610671068106910701071107210731074107510761077107810791080108110821083108410851086108710881089109010911092109310941095109610971098109911001101110211031104110511061107110811091110111111121113111411151116111711181119112011211122112311241125112611271128112911301131113211331134113511361137113811391140114111421143114411451146114711481149115011511152115311541155115611571158115911601161116211631164116511661167116811691170117111721173117411751176117711781179118011811182 |
- import modelverse_kernel.primitives as primitive_functions
- import modelverse_kernel.compiled as compiled_functions
- from modelverse_kernel.request_handler import RequestHandler
- import modelverse_jit.jit as jit
- import modelverse_jit.intrinsics as jit_intrinsics
- import modelverse_jit.jit_primitives as jit_primitives
- import modelverse_jit.runtime as jit_runtime
- from collections import defaultdict
- import sys
- import time
- if sys.version > '3': # pragma: no cover
- string_types = (str,)
- else:
- string_types = (str, unicode)
- class ModelverseKernel(object):
- def __init__(self, root):
- self.root = root
- self.returnvalue = None
- self.success = True
- # request_handlers is a dictionary of tasknames to dictionaries of operations
- # to request handlers. In generics notation:
- #
- # Dictionary<
- # Username,
- # Dictionary<
- # Operation,
- # RequestHandler>>
- #
- self.request_handlers = {}
- self.allow_compiled = True
- #self.allow_compiled = False
- # Set `self.suggest_function_names` to True to associate global function names
- # with their function bodies.
- self.suggest_function_names = True
- # `self.jit` handles most JIT-related functionality.
- self.jit = jit.ModelverseJit()
- if self.allow_compiled:
- self.jit.compiled_function_lookup = lambda func_name: \
- getattr(compiled_functions, func_name, None)
- jit_intrinsics.register_intrinsics(self.jit)
- # To disable the JIT, uncomment the line below:
- #
- # self.jit.set_jit_enabled(False)
- #
- # To disable direct calls in the JIT, uncomment the line below:
- #
- # self.jit.allow_direct_calls(False)
- #
- # To disable thunks in the JIT, uncomment the line below:
- #
- # self.jit.enable_thunks(False)
- #
- # To make the JIT compile 'input' instructions as calls to
- # modelverse_jit.runtime.get_input, uncomment the line below:
- #
- # self.jit.use_input_function()
- #
- # To disable source maps in the JIT, uncomment the line below:
- #
- # self.jit.enable_source_maps(False)
- #
- # To enable tracing in the JIT (for debugging purposes), uncomment
- # the line below:
- #
- # self.jit.enable_tracing()
- #
- # To make the JIT print JIT successes and errors to the command-line,
- # uncomment the line below:
- #
- # self.jit.set_jit_success_log()
- #
- # If you want, you can use a custom logging function:
- #
- # self.jit.set_jit_success_log(logging_function)
- #
- # To make the JIT print jitted code to the command-line, uncomment the
- # line below:
- #
- # self.jit.set_jit_code_log()
- #
- # If you want, you can use a custom logging function:
- #
- # self.jit.set_jit_code_log(logging_function)
- #
- self.debug_info = defaultdict(list)
- def execute_yields(self, taskname, operation, params, reply):
- try:
- self.success = True
- self.taskname = taskname
- if taskname not in self.request_handlers:
- self.request_handlers[taskname] = {}
- if operation not in self.request_handlers[taskname]:
- # Create the generator for the function to execute
- self.request_handlers[taskname][operation] = RequestHandler()
- handler = self.request_handlers[taskname][operation]
- if not handler.is_active():
- handler.push_generator(getattr(self, operation)(taskname, *params))
- return handler.handle_request(reply)
- except:
- print("Unknown error @ " + str(self.debug_info.get(taskname, "Unknown task")))
- raise
- def execute_rule(self, taskname):
- task_root, = yield [("RD", [self.root, taskname])]
- if task_root is None:
- self.success = False
- self.returnvalue = None
- yield None
- else:
- task_frame, = yield [("RD", [task_root, "frame"])]
- self.inst, phase = yield [("RD", [task_frame, "IP"]),
- ("RD", [task_frame, "phase"]),
- ]
- self.new_debug, self.phase_v, inst_v = \
- yield [("RD", [self.inst, "__debug"]),
- ("RV", [phase]),
- ("RV", [self.inst]),
- ]
- if self.new_debug is not None:
- if self.debug_info[taskname]:
- self.debug_info[taskname][-1], = yield [("RV", [self.new_debug])]
- if self.phase_v == "finish":
- gen = self.helper_init(task_root)
- elif self.inst is None:
- raise Exception("Instruction pointer could not be found!")
- elif isinstance(self.phase_v, string_types):
- if self.phase_v == "init" and self.jit.is_jittable_entry_point(self.inst):
- #print("%-30s(%s)" % ("COMPILED " + str(self.jit.jitted_entry_points[self.inst]), phase_v))
- gen = self.execute_jit(task_root, self.inst, taskname)
- elif inst_v is None:
- raise Exception("%s: error understanding command (%s, %s)" % (self.debug_info[taskname], inst_v, self.phase_v))
- else:
- #print("%-30s(%s) -- %s" % (inst_v["value"], self.phase_v, taskname))
- gen = self.get_inst_phase_generator(inst_v, self.phase_v, task_root)
- elif inst_v is None:
- raise Exception("%s: error understanding command (%s, %s)" % (self.debug_info[taskname], inst_v, self.phase_v))
- elif inst_v["value"] == "call":
- #print("%-30s(%s)" % ("call", "param"))
- gen = self.call_param(task_root)
- else:
- raise Exception("%s: error understanding command (%s, %s)" % (self.debug_info[taskname], inst_v, self.phase_v))
- def handle_jit_failed(exception):
- # Try again, but this time without the JIT.
- gen = self.get_inst_phase_generator(inst_v, self.phase_v, task_root)
- yield [("TAIL_CALL", [gen])]
- yield [("TRY", [])]
- yield [("CATCH", [jit.JitCompilationFailedException, handle_jit_failed])]
- yield [("CALL", [gen])]
- yield [("END_TRY", [])]
- def get_inst_phase_generator(self, inst_v, phase_v, task_root):
- """Gets a generator for the given instruction in the given phase,
- for the specified task root."""
- #print("%-30s(%s) -- %s" % (inst_v["value"], phase_v, taskname))
- return getattr(self, "%s_%s" % (inst_v["value"], phase_v))(task_root)
- ##########################
- ### Process primitives ###
- ##########################
- def load_primitives(self, taskname):
- yield [("CALL_ARGS",
- [self.load_primitives_from, (taskname, 'primitives', primitive_functions)])]
- yield [("CALL_ARGS",
- [self.load_primitives_from, (taskname, 'jit', jit_primitives)])]
- def load_primitives_from(self, taskname, source_name, source):
- hierarchy, = yield [("RD", [self.root, "__hierarchy"])]
- primitives, = yield [("RD", [hierarchy, source_name])]
- keys, = yield [("RDK", [primitives])]
- function_names = yield [("RV", [f]) for f in keys]
- signatures = yield [("RDN", [primitives, f]) for f in keys]
- bodies = yield [("RD", [f, "body"]) for f in signatures]
- for i in range(len(keys)):
- self.jit.register_compiled(
- bodies[i],
- getattr(source, function_names[i]),
- function_names[i])
- def jit_compile(self, task_root, inst):
- # Try to retrieve the suggested name.
- suggested_name = self.jit.get_global_name(inst)
- # Have the JIT compile the function.
- return self.jit.jit_compile(task_root, inst, suggested_name)
- def execute_jit(self, task_root, inst, taskname):
- # execute_jit
- task_frame, = yield [("RD", [task_root, "frame"])]
- symbols, = yield [("RD", [task_frame, "symbols"])]
- all_links, = yield [("RO", [symbols])]
- containers = yield [("RE", [v]) for v in all_links]
- outgoings = yield [("RO", [v]) for v in all_links]
- dict_values = yield [("RD", [v[1], "value"]) for v in containers]
- formals_1 = yield [("RE", [v[0]]) for v in outgoings]
- dict_keys_ref = yield [("RD", [v[1], "name"]) for v in formals_1]
- dict_keys = yield [("RV", [v]) for v in dict_keys_ref]
- parameters = dict(zip(dict_keys, dict_values))
- parameters["root"] = self.root
- parameters["task_root"] = task_root
- parameters["taskname"] = taskname
- parameters["mvk"] = self
- # Have the JIT compile the function.
- compiled_func, = yield [("CALL_ARGS", [self.jit_compile, (task_root, inst)])]
- # Run the compiled function.
- results = yield [("CALL_KWARGS", [compiled_func, parameters])]
- if results is None:
- raise Exception(
- "%s: primitive finished without returning a value!" % (self.debug_info[taskname]))
- else:
- result, = results
- # Clean up the current stack, as if a return happened
- old_frame, exception_return = yield [
- ("RD", [task_frame, "prev"]),
- ("RD", [task_frame, primitive_functions.EXCEPTION_RETURN_KEY])]
- if self.debug_info[self.taskname]:
- self.debug_info[self.taskname].pop()
- if exception_return is not None:
- # The caller has requested that we throw an exception instead of injecting
- # the return value into the caller's frame. Read the comment at
- # primitive_functions.EXCEPTION_RETURN_KEY for the rationale behind this design.
- yield [("CD", [task_root, "frame", old_frame]),
- ("DN", [task_frame])]
- raise primitive_functions.InterpretedFunctionFinished(result)
- else:
- lnk, = yield [("RDE", [old_frame, "returnvalue"])]
- _, _, _, _ = yield [("CD", [old_frame, "returnvalue", result]),
- ("CD", [task_root, "frame", old_frame]),
- ("DE", [lnk]),
- ("DN", [task_frame]),
- ]
- ########################################
- ### Execute input and output methods ###
- ########################################
- def get_output(self, taskname):
- task_root, = yield [("RD", [self.root, taskname])]
- first_output, = yield [("RD", [task_root, "output"])]
- next_output, rv = yield [("RD", [first_output, "next"]),
- ("RD", [first_output, "value"]),
- ]
- if next_output is None:
- self.success = False
- self.returnvalue = None
- else:
- rv_value, = yield [("RV", [rv])]
- _, _ = yield [("CD", [task_root, "output", next_output]),
- ("DN", [first_output]),
- ]
- self.returnvalue = rv_value
- def set_input(self, taskname, value):
- task_root, = yield [("RD", [self.root, taskname])]
- old_input, link = yield [("RD", [task_root, "last_input"]),
- ("RDE", [task_root, "last_input"]),
- ]
- new_input, = yield [("CN", [])]
- _, _ = yield [("CD", [task_root, "last_input", new_input]),
- ("CD", [old_input, "next", new_input]),
- ]
- new_value, = yield [("CNV", [value])]
- _, _ = yield [("CD", [old_input, "value", new_value]),
- ("DE", [link])
- ]
- self.returnvalue = {"id": 100, "value": "success"}
- #############################################
- ### Transformation rules for instructions ###
- #############################################
- def continue_init(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- inst, = yield [("RD", [task_frame, "IP"])]
- while_inst, = yield [("RD", [inst, "while"])]
- old_evalstack_link, old_phase_link, evalstack_roots = \
- yield [("RDE", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "phase"]),
- ("RRD", [while_inst, "inst"]),
- ]
- if len(evalstack_roots) == 1:
- evalstack_root = evalstack_roots[0]
- else:
- raise Exception("Could not process continue statement!")
- prev_evalstack_roots, old_evalstack_phase_link = \
- yield [("RRD", [evalstack_root, "prev"]),
- ("RDE", [evalstack_root, "phase"]),
- ]
- if len(prev_evalstack_roots) == 1:
- prev_evalstack_root = prev_evalstack_roots[0]
- else:
- raise Exception("Could not process continue statement!")
- new_evalstack_root, new_phase_while, new_phase_inst, prev_evalstack_root_link = \
- yield [("CN", []),
- ("CNV", ["init"]),
- ("CNV", ["finish"]),
- ("RDE", [prev_evalstack_root, "prev"]),
- ]
- _, _, _, _, _, _, _, _ = \
- yield [("CD", [task_frame, "evalstack", new_evalstack_root]),
- ("CD", [new_evalstack_root, "prev", evalstack_root]),
- ("CD", [task_frame, "phase", new_phase_inst]),
- ("CD", [evalstack_root, "phase", new_phase_while]),
- ("DE", [old_evalstack_link]),
- ("DE", [prev_evalstack_root_link]),
- ("DE", [old_phase_link]),
- ("DE", [old_evalstack_phase_link]),
- ]
- def break_init(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- inst, = yield [("RD", [task_frame, "IP"])]
- while_inst, = yield [("RD", [inst, "while"])]
- old_evalstack_link, old_phase_link, evalstack_roots = \
- yield [("RDE", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "phase"]),
- ("RRD", [while_inst, "inst"]),
- ]
- if len(evalstack_roots) == 1:
- evalstack_root = evalstack_roots[0]
- else:
- raise Exception("Could not process break statement!")
- prev_evalstack_roots, old_evalstack_phase_link = \
- yield [("RRD", [evalstack_root, "prev"]),
- ("RDE", [evalstack_root, "phase"]),
- ]
- if len(prev_evalstack_roots) == 1:
- prev_evalstack_root = prev_evalstack_roots[0]
- else:
- raise Exception("Could not process break statement!")
- new_evalstack_root, new_phase_while, new_phase_inst, prev_evalstack_root_link = \
- yield [("CN", []),
- ("CNV", ["finish"]),
- ("CNV", ["finish"]),
- ("RDE", [prev_evalstack_root, "prev"]),
- ]
- _, _, _, _, _, _, _, _ = \
- yield [("CD", [task_frame, "evalstack", new_evalstack_root]),
- ("CD", [new_evalstack_root, "prev", evalstack_root]),
- ("CD", [task_frame, "phase", new_phase_inst]),
- ("CD", [evalstack_root, "phase", new_phase_while]),
- ("DE", [old_evalstack_link]),
- ("DE", [prev_evalstack_root_link]),
- ("DE", [old_phase_link]),
- ("DE", [old_evalstack_phase_link]),
- ]
- def if_init(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- evalstack, evalstack_link = \
- yield [("RD", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "evalstack"]),
- ]
- inst, ip_link = yield [("RD", [task_frame, "IP"]),
- ("RDE", [task_frame, "IP"]),
- ]
- cond, = yield [("RD", [inst, "cond"])]
- new_evalstack, new_phase = \
- yield [("CN", []),
- ("CNV", ["cond"]),
- ]
- _, _, _, _, _, _, _ = \
- yield [("CD", [task_frame, "evalstack", new_evalstack]),
- ("CD", [new_evalstack, "prev", evalstack]),
- ("CD", [task_frame, "IP", cond]),
- ("CD", [evalstack, "inst", inst]),
- ("CD", [evalstack, "phase", new_phase]),
- ("DE", [evalstack_link]),
- ("DE", [ip_link]),
- ]
- def if_cond(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- returnvalue, inst = yield [("RD", [task_frame, "returnvalue"]),
- ("RD", [task_frame, "IP"]),
- ]
- returnvalue_v, = yield [("RV", [returnvalue])]
- _else, = yield [("RD", [inst, "else"])]
- if returnvalue_v:
- phase_link, evalstack, evalstack_link, ip_link, _then, new_evalstack, evalstack_phase, new_phase = \
- yield [("RDE", [task_frame, "phase"]),
- ("RD", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "IP"]),
- ("RD", [inst, "then"]),
- ("CN", []),
- ("CNV", ["finish"]),
- ("CNV", ["init"]),
- ]
- _, _, _, _, _, _, _, _, _ = \
- yield [("CD", [task_frame, "evalstack", new_evalstack]),
- ("CD", [task_frame, "IP", _then]),
- ("CD", [new_evalstack, "prev", evalstack]),
- ("CD", [evalstack, "inst", inst]),
- ("CD", [evalstack, "phase", evalstack_phase]),
- ("CD", [task_frame, "phase", new_phase]),
- ("DE", [evalstack_link]),
- ("DE", [ip_link]),
- ("DE", [phase_link]),
- ]
- elif _else is None:
- phase_link, new_phase = \
- yield [("RDE", [task_frame, "phase"]),
- ("CNV", ["finish"]),
- ]
- _, _ = yield [("CD", [task_frame, "phase", new_phase]),
- ("DE", [phase_link]),
- ]
- else:
- phase_link, evalstack, evalstack_link, ip_link = \
- yield [("RDE", [task_frame, "phase"]),
- ("RD", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "IP"]),
- ]
- new_evalstack, new_phase, evalstack_phase = \
- yield [("CN", []),
- ("CNV", ["init"]),
- ("CNV", ["finish"]),
- ]
- _, _, _, _, _, _, _, _, _ = \
- yield [("CD", [task_frame, "evalstack", new_evalstack]),
- ("CD", [task_frame, "IP", _else]),
- ("CD", [new_evalstack, "prev", evalstack]),
- ("CD", [evalstack, "inst", inst]),
- ("CD", [evalstack, "phase", evalstack_phase]),
- ("CD", [task_frame, "phase", new_phase]),
- ("DE", [evalstack_link]),
- ("DE", [ip_link]),
- ("DE", [phase_link]),
- ]
- def while_init(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- evalstack, evalstack_link, ip_link, inst = \
- yield [("RD", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "IP"]),
- ("RD", [task_frame, "IP"]),
- ]
- cond, new_evalstack, new_phase = \
- yield [("RD", [inst, "cond"]),
- ("CN", []),
- ("CNV", ["cond"]),
- ]
- _, _, _, _, _, _, _ = \
- yield [("CD", [task_frame, "evalstack", new_evalstack]),
- ("CD", [new_evalstack, "prev", evalstack]),
- ("CD", [task_frame, "IP", cond]),
- ("CD", [evalstack, "phase", new_phase]),
- ("CD", [evalstack, "inst", inst]),
- ("DE", [evalstack_link]),
- ("DE", [ip_link]),
- ]
- def while_cond(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- returnvalue, = yield [("RD", [task_frame, "returnvalue"])]
- returnvalue_v, = yield [("RV", [returnvalue])]
- if returnvalue_v:
- phase_link, evalstack, evalstack_link, ip_link, inst = \
- yield [("RDE", [task_frame, "phase"]),
- ("RD", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "IP"]),
- ("RD", [task_frame, "IP"]),
- ]
- body, = yield [("RD", [inst, "body"])]
- new_evalstack, new_phase, evalstack_phase = \
- yield [("CN", []),
- ("CNV", ["init"]),
- ("CNV", ["init"]),
- ]
- _, _, _, _, _, _, _, _, _ = \
- yield [("CD", [task_frame, "IP", body]),
- ("CD", [task_frame, "phase", new_phase]),
- ("CD", [task_frame, "evalstack", new_evalstack]),
- ("CD", [new_evalstack, "prev", evalstack]),
- ("CD", [evalstack, "inst", inst]),
- ("CD", [evalstack, "phase", evalstack_phase]),
- ("DE", [evalstack_link]),
- ("DE", [ip_link]),
- ("DE", [phase_link]),
- ]
- else:
- phase_link, new_phase = \
- yield [("RDE", [task_frame, "phase"]),
- ("CNV", ["finish"]),
- ]
- _, _ = yield [("CD", [task_frame, "phase", new_phase]),
- ("DE", [phase_link])
- ]
- def access_init(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- evalstack, evalstack_link, inst, ip_link = \
- yield [("RD", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "evalstack"]),
- ("RD", [task_frame, "IP"]),
- ("RDE", [task_frame, "IP"]),
- ]
- var, new_evalstack, new_phase = \
- yield [("RD", [inst, "var"]),
- ("CN", []),
- ("CNV", ["eval"]),
- ]
- _, _, _, _, _, _, _ = \
- yield [("CD", [task_frame, "IP", var]),
- ("CD", [task_frame, "evalstack", new_evalstack]),
- ("CD", [new_evalstack, "prev", evalstack]),
- ("CD", [evalstack, "inst", inst]),
- ("CD", [evalstack, "phase", new_phase]),
- ("DE", [evalstack_link]),
- ("DE", [ip_link]),
- ]
- def access_eval(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- phase_link, returnvalue_link, returnvalue = \
- yield [("RDE", [task_frame, "phase"]),
- ("RDE", [task_frame, "returnvalue"]),
- ("RD", [task_frame, "returnvalue"]),
- ]
- value, new_phase = yield [("RD", [returnvalue, "value"]),
- ("CNV", ["finish"]),
- ]
- _, _, _, _ = yield [("CD", [task_frame, "phase", new_phase]),
- ("CD", [task_frame, "returnvalue", value]),
- ("DE", [phase_link]),
- ("DE", [returnvalue_link]),
- ]
- def resolve_init(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- symbols, evalstack, evalstack_link, ip_link, inst = \
- yield [("RD", [task_frame, "symbols"]),
- ("RD", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "IP"]),
- ("RD", [task_frame, "IP"]),
- ]
- var, = yield [("RD", [inst, "var"])]
- variable, = yield [("RDN", [symbols, var])]
- if variable is None:
- phase_link, returnvalue_link, _globals, var_name = \
- yield [("RDE", [task_frame, "phase"]),
- ("RDE", [task_frame, "returnvalue"]),
- ("RD", [task_root, "globals"]),
- ("RV", [var]),
- ]
- variable, new_phase = \
- yield [("RD", [_globals, var_name]),
- ("CNV", ["finish"]),
- ]
- if variable is None:
- raise Exception(jit_runtime.GLOBAL_NOT_FOUND_MESSAGE_FORMAT % var_name)
- # Resolved a global, so this is a string
- # Potentially, this might even be a function that we have precompiled already!
- # So check whether this is the case or not
- if self.allow_compiled:
- compiled_function = getattr(compiled_functions, var_name, None)
- if compiled_function is not None:
- # We have a compiled function ready!
- # Now we have to bind the ID to the compiled functions
- # For this, we read out the body of the resolved data
- compiler_val, = yield [("RD", [variable, "value"])]
- compiler_body, = yield [("RD", [compiler_val, "body"])]
- self.jit.register_compiled(compiler_body, compiled_function, var_name)
- # If we're dealing with a function, then we might want to figure out what its body id
- # is now so we can suggest a name to the JIT later.
- if self.suggest_function_names and self.jit.get_global_body_id(var_name) is None:
- compiler_val, = yield [("RD", [variable, "value"])]
- if compiler_val is not None:
- compiler_body, = yield [("RD", [compiler_val, "body"])]
- if compiler_body is not None:
- self.jit.register_global(compiler_body, var_name)
- else:
- phase_link, returnvalue_link, new_phase = \
- yield [("RDE", [task_frame, "phase"]),
- ("RDE", [task_frame, "returnvalue"]),
- ("CNV", ["finish"]),
- ]
- _, _, _, _ = yield [("CD", [task_frame, "phase", new_phase]),
- ("CD", [task_frame, "returnvalue", variable]),
- ("DE", [phase_link]),
- ("DE", [returnvalue_link]),
- ]
- def assign_init(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- evalstack, evalstack_link, ip_link, inst = \
- yield [("RD", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "IP"]),
- ("RD", [task_frame, "IP"]),
- ]
- var, new_evalstack, new_phase = \
- yield [("RD", [inst, "var"]),
- ("CN", []),
- ("CNV", ["value"]),
- ]
- _, _, _, _, _, _, _ = \
- yield [("CD", [task_frame, "IP", var]),
- ("CD", [task_frame, "evalstack", new_evalstack]),
- ("CD", [new_evalstack, "prev", evalstack]),
- ("CD", [evalstack, "inst", inst]),
- ("CD", [evalstack, "phase", new_phase]),
- ("DE", [evalstack_link]),
- ("DE", [ip_link]),
- ]
- def assign_value(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- phase_link, evalstack, returnvalue, evalstack_link, ip_link, inst = \
- yield [("RDE", [task_frame, "phase"]),
- ("RD", [task_frame, "evalstack"]),
- ("RD", [task_frame, "returnvalue"]),
- ("RDE", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "IP"]),
- ("RD", [task_frame, "IP"]),
- ]
- value, new_evalstack, new_phase, evalstack_phase = \
- yield [("RD", [inst, "value"]),
- ("CN", []),
- ("CNV", ["init"]),
- ("CNV", ["assign"]),
- ]
- _, _, _, _, _, _, _, _, _, _ = \
- yield [("CD", [task_frame, "variable", returnvalue]),
- ("CD", [task_frame, "phase", new_phase]),
- ("CD", [task_frame, "evalstack", new_evalstack]),
- ("CD", [new_evalstack, "prev", evalstack]),
- ("CD", [evalstack, "inst", inst]),
- ("CD", [evalstack, "phase", evalstack_phase]),
- ("CD", [task_frame, "IP", value]),
- ("DE", [evalstack_link]),
- ("DE", [phase_link]),
- ("DE", [ip_link]),
- ]
- def assign_assign(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- phase_link, returnvalue, variable_link, variable = \
- yield [("RDE", [task_frame, "phase"]),
- ("RD", [task_frame, "returnvalue"]),
- ("RDE", [task_frame, "variable"]),
- ("RD", [task_frame, "variable"]),
- ]
- value_link, new_phase = \
- yield [("RDE", [variable, "value"]),
- ("CNV", ["finish"]),
- ]
- _, _, _, _, _ = yield [("CD", [task_frame, "phase", new_phase]),
- ("CD", [variable, "value", returnvalue]),
- ("DE", [variable_link]),
- ("DE", [value_link]),
- ("DE", [phase_link]),
- ]
-
- def return_init(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- inst, = yield [("RD", [task_frame, "IP"])]
- value, = yield [("RD", [inst, "value"])]
- if value is None:
- prev_frame, = yield [("RD", [task_frame, "prev"])]
- # If the callee's frame is marked with the '__exception_return' key, then
- # we need to throw an exception instead of just finishing here. This design
- # gives us O(1) state reads per jit-interpreter transition.
- exception_return, = yield [("RD", [task_frame, primitive_functions.EXCEPTION_RETURN_KEY])]
- if prev_frame is None:
- _, = yield [("DN", [task_root])]
- del self.debug_info[self.taskname]
- else:
- if self.debug_info[self.taskname]:
- self.debug_info[self.taskname].pop()
- _, _ = yield [("CD", [task_root, "frame", prev_frame]),
- ("DN", [task_frame]),
- ]
- if exception_return is not None:
- raise primitive_functions.InterpretedFunctionFinished(None)
- else:
- evalstack, evalstack_link, ip_link, new_evalstack, evalstack_phase = \
- yield [("RD", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "IP"]),
- ("CN", []),
- ("CNV", ["eval"]),
- ]
- _, _, _, _, _, _, _ = \
- yield [("CD", [task_frame, "evalstack", new_evalstack]),
- ("CD", [new_evalstack, "prev", evalstack]),
- ("CD", [evalstack, "inst", inst]),
- ("CD", [evalstack, "phase", evalstack_phase]),
- ("CD", [task_frame, "IP", value]),
- ("DE", [evalstack_link]),
- ("DE", [ip_link]),
- ]
- def return_eval(self, task_root):
- if self.debug_info[self.taskname]:
- self.debug_info[self.taskname].pop()
- task_frame, = yield [("RD", [task_root, "frame"])]
- prev_frame, = yield [("RD", [task_frame, "prev"])]
- if prev_frame is None:
- _, = yield [("DN", [task_root])]
- del self.debug_info[self.taskname]
- exception_return, returnvalue = yield [
- ("RD", [task_frame, primitive_functions.EXCEPTION_RETURN_KEY]),
- ("RD", [task_frame, "returnvalue"])]
- # If the callee's frame is marked with the '__exception_return' key, then
- # we need to throw an exception instead of just finishing here. This design
- # gives us O(1) state reads per jit-interpreter transition.
- if exception_return is not None:
- yield [
- ("CD", [task_root, "frame", prev_frame]),
- ("DN", [task_frame])]
- raise primitive_functions.InterpretedFunctionFinished(returnvalue)
- else:
- old_returnvalue_link, = yield [("RDE", [prev_frame, "returnvalue"])]
- yield [
- ("CD", [task_root, "frame", prev_frame]),
- ("CD", [prev_frame, "returnvalue", returnvalue]),
- ("DE", [old_returnvalue_link]),
- ("DN", [task_frame])]
- def constant_init(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- phase_link, returnvalue_link, inst = \
- yield [("RDE", [task_frame, "phase"]),
- ("RDE", [task_frame, "returnvalue"]),
- ("RD", [task_frame, "IP"]),
- ]
- node, new_phase = yield [("RD", [inst, "node"]),
- ("CNV", ["finish"]),
- ]
- _, _, _, _ = yield [("CD", [task_frame, "phase", new_phase]),
- ("CD", [task_frame, "returnvalue", node]),
- ("DE", [returnvalue_link]),
- ("DE", [phase_link]),
- ]
- def helper_init(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- inst, = yield [("RD", [task_frame, "IP"])]
- next, = yield [("RD", [inst, "next"])]
- if next is None:
- ip_link, phase_link, evalstack_top = \
- yield [("RDE", [task_frame, "IP"]),
- ("RDE", [task_frame, "phase"]),
- ("RD", [task_frame, "evalstack"]),
- ]
- evalstack, = yield [("RD", [evalstack_top, "prev"])]
- evalstack_inst, evalstack_phase, evalstack_inst_link, evalstack_phase_link = \
- yield [("RD", [evalstack, "inst"]),
- ("RD", [evalstack, "phase"]),
- ("RDE", [evalstack, "inst"]),
- ("RDE", [evalstack, "phase"]),
- ]
- _, _, _, _, _, _, _, _ = \
- yield [("CD", [task_frame, "evalstack", evalstack]),
- ("CD", [task_frame, "IP", evalstack_inst]),
- ("CD", [task_frame, "phase", evalstack_phase]),
- ("DE", [ip_link]),
- ("DE", [phase_link]),
- ("DE", [evalstack_inst_link]),
- ("DE", [evalstack_phase_link]),
- ("DN", [evalstack_top]),
- ]
- else:
- ip_link, phase_link, new_phase = \
- yield [("RDE", [task_frame, "IP"]),
- ("RDE", [task_frame, "phase"]),
- ("CNV", ["init"]),
- ]
- _, _, _, _ = yield [("CD", [task_frame, "IP", next]),
- ("CD", [task_frame, "phase", new_phase]),
- ("DE", [ip_link]),
- ("DE", [phase_link]),
- ]
- def call_init(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- symbols, evalstack, evalstack_link, ip_link, inst = \
- yield [("RD", [task_frame, "symbols"]),
- ("RD", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "IP"]),
- ("RD", [task_frame, "IP"]),
- ]
- func, params = yield [("RD", [inst, "func"]),
- ("RD", [inst, "params"]),
- ]
-
- if params is None:
- new_evalstack, evalstack_phase = \
- yield [("CN", []),
- ("CNV", ["call"]),
- ]
- _, _, _, _, _, _, _ = \
- yield [("CD", [task_frame, "evalstack", new_evalstack]),
- ("CD", [new_evalstack, "prev", evalstack]),
- ("CD", [evalstack, "inst", inst]),
- ("CD", [evalstack, "phase", evalstack_phase]),
- ("CD", [task_frame, "IP", func]),
- ("DE", [evalstack_link]),
- ("DE", [ip_link]),
- ]
- else:
- new_evalstack,= yield [("CN", [])]
- _, _, _, _, _, _, _ = \
- yield [("CD", [task_frame, "evalstack", new_evalstack]),
- ("CD", [new_evalstack, "prev", evalstack]),
- ("CD", [evalstack, "inst", inst]),
- ("CD", [evalstack, "phase", params]),
- ("CD", [task_frame, "IP", func]),
- ("DE", [evalstack_link]),
- ("DE", [ip_link]),
- ]
- def call_call(self, task_root):
- self.debug_info[self.taskname].append("None")
- task_frame, = yield [("RD", [task_root, "frame"])]
- inst, = yield [("RD", [task_frame, "IP"])]
- param, = yield [("RD", [inst, "last_param"])]
- if param is None:
- returnvalue, = yield [("RD", [task_frame, "returnvalue"])]
- body, = yield [("RD", [returnvalue, "body"])]
- self.jit.mark_entry_point(body)
- phase_link, frame_link, prev_phase, new_phase, new_frame, new_evalstack, new_symbols, new_returnvalue = \
- yield [("RDE", [task_frame, "phase"]),
- ("RDE", [task_root, "frame"]),
- ("CNV", ["finish"]),
- ("CNV", ["init"]),
- ("CN", []),
- ("CN", []),
- ("CN", []),
- ("CN", []),
- ]
- _, _, _, _, _, _, _, _, _, _, _ = \
- yield [("CD", [task_root, "frame", new_frame]),
- ("CD", [new_frame, "evalstack", new_evalstack]),
- ("CD", [new_frame, "symbols", new_symbols]),
- ("CD", [new_frame, "returnvalue", new_returnvalue]),
- ("CD", [new_frame, "caller", inst]),
- ("CD", [new_frame, "phase", new_phase]),
- ("CD", [new_frame, "IP", body]),
- ("CD", [new_frame, "prev", task_frame]),
- ("CD", [task_frame, "phase", prev_phase]),
- ("DE", [phase_link]),
- ("DE", [frame_link]),
- ]
- else:
- newer_frames, invoking_frames = \
- yield [("RRD", [task_frame, "prev"]),
- ("RRD", [inst, "caller"]),
- ]
- new_frame = self.find_overlapping(newer_frames, invoking_frames)
- phase_link, frame_link, new_symbols, new_IP = \
- yield [("RDE", [task_frame, "phase"]),
- ("RDE", [task_root, "frame"]),
- ("RD", [new_frame, "symbols"]),
- ("RD", [new_frame, "IP"]),
- ]
- signature, = yield [("RRD", [new_IP, "body"])]
- signature = signature[0]
- sig_params, last_param = \
- yield [("RD", [signature, "params"]),
- ("RD", [inst, "last_param"]),
- ]
- body, = yield [("RD", [new_IP, "body"])]
- self.jit.mark_entry_point(body)
-
- name, = yield [("RD", [last_param, "name"])]
- name_value, = yield [("RV", [name])]
- returnvalue, formal_parameter, new_phase, variable = \
- yield [("RD", [task_frame, "returnvalue"]),
- ("RD", [sig_params, name_value]),
- ("CNV", ["finish"]),
- ("CN", []),
- ]
- _, _, _, t1 = yield [("CD", [task_root, "frame", new_frame]),
- ("CD", [task_frame, "phase", new_phase]),
- ("CD", [variable, "value", returnvalue]),
- ("CE", [new_symbols, variable]),
- ]
- _, _, _ = yield [("CE", [t1, formal_parameter]),
- ("DE", [frame_link]),
- ("DE", [phase_link]),
- ]
- def find_overlapping(self, a, b):
- newer_frames = set(a)
- invoking_frames = set(b)
- matches = list(newer_frames.intersection(invoking_frames))
- if len(matches) == 1:
- return matches[0]
- elif len(matches) > 1:
- raise Exception("Error: multiple overlapping elements")
- else:
- raise Exception("Error: could not find any overlap")
- def call_param(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- inst, phase = yield [("RD", [task_frame, "IP"]),
- ("RD", [task_frame, "phase"]),
- ]
- params, last_param = \
- yield [("RD", [inst, "params"]),
- ("RD", [inst, "last_param"]),
- ]
- next_param, = yield [("RD", [params, "next_param"])]
- if params == phase:
- phase_link, ip_link, returnvalue, param_value, evalstack, evalstack_link = \
- yield [("RDE", [task_frame, "phase"]),
- ("RDE", [task_frame, "IP"]),
- ("RD", [task_frame, "returnvalue"]),
- ("RD", [params, "value"]),
- ("RD", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "evalstack"]),
- ]
- body, = yield [("RD", [returnvalue, "body"])]
- new_frame, prev_evalstack, new_phase, prev_phase, new_evalstack, new_symbols, new_returnvalue = \
- yield [("CN", []),
- ("CN", []),
- ("CNV", ["init"]),
- ("CNV", ["init"]),
- ("CN", []),
- ("CN", []),
- ("CN", []),
- ]
- _, _, _, _, _, _, _, _, _, _, _, _, _, _, _ = \
- yield [("CD", [new_frame, "evalstack", new_evalstack]),
- ("CD", [new_frame, "symbols", new_symbols]),
- ("CD", [new_frame, "returnvalue", new_returnvalue]),
- ("CD", [new_frame, "caller", inst]),
- ("CD", [new_frame, "phase", new_phase]),
- ("CD", [new_frame, "IP", body]),
- ("CD", [new_frame, "prev", task_frame]),
- ("CD", [task_frame, "phase", prev_phase]),
- ("CD", [task_frame, "IP", param_value]),
- ("CD", [prev_evalstack, "prev", evalstack]),
- ("CD", [evalstack, "inst", inst]),
- ("CD", [task_frame, "evalstack", prev_evalstack]),
- ("DE", [evalstack_link]),
- ("DE", [ip_link]),
- ("DE", [phase_link]),
- ]
- if next_param is not None:
- _ = yield [("CD", [evalstack, "phase", next_param])]
- else:
- evalstack_phase, = \
- yield [("CNV", ["call"])]
- _ = yield [("CD", [evalstack, "phase", evalstack_phase])]
- else:
- frame_link, phase_link, newer_frames, invoking_frames = \
- yield [("RDE", [task_root, "frame"]),
- ("RDE", [task_frame, "phase"]),
- ("RRD", [task_frame, "prev"]),
- ("RRD", [inst, "caller"]),
- ]
- new_frame = self.find_overlapping(newer_frames, invoking_frames)
- ip_link, evalstack, evalstack_link, new_symbols, new_IP = \
- yield [("RDE", [task_frame, "IP"]),
- ("RD", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "evalstack"]),
- ("RD", [new_frame, "symbols"]),
- ("RD", [new_frame, "IP"]),
- ]
- signature, = yield [("RRD", [new_IP, "body"])]
- signature = signature[0]
- sig_params, = yield [("RD", [signature, "params"])]
- if last_param == phase:
- prev_param, = \
- yield [("RRD", [last_param, "next_param"])]
- prev_param = prev_param[0]
- name, = yield [("RD", [prev_param, "name"])]
- name_value, = \
- yield [("RV", [name])]
- evalstack_phase, = \
- yield [("CNV", ["call"])]
- _ = yield [("CD", [evalstack, "phase", evalstack_phase])]
- formal_parameter, param_value = \
- yield [("RD", [sig_params, name_value]),
- ("RD", [last_param, "value"]),
- ]
- else:
- param_b, = yield [("RD", [task_frame, "phase"])]
- param_c, param_a = \
- yield [("RD", [param_b, "next_param"]),
- ("RRD", [param_b, "next_param"]),
- ]
- param_a = param_a[0]
- name, param_value = \
- yield [("RD", [param_a, "name"]),
- ("RD", [param_b, "value"]),
- ]
- name_value, = \
- yield [("RV", [name])]
- formal_parameter, _ = \
- yield [("RD", [sig_params, name_value]),
- ("CD", [evalstack, "phase", param_c]),
- ]
- new_phase, new_evalstack, variable, returnvalue = \
- yield [("CNV", ["init"]),
- ("CN", []),
- ("CN", []),
- ("RD", [task_frame, "returnvalue"]),
- ]
- _, _, _, _, _, _ = \
- yield [("CD", [task_frame, "evalstack", new_evalstack]),
- ("CD", [new_evalstack, "prev", evalstack]),
- ("CD", [evalstack, "inst", inst]),
- ("CD", [task_frame, "phase", new_phase]),
- ("CD", [task_frame, "IP", param_value]),
- ("CD", [variable, "value", returnvalue]),
- ]
- t1, = yield [("CE", [new_symbols, variable])]
- _, _, _, _ = \
- yield [("CE", [t1, formal_parameter]),
- ("DE", [phase_link]),
- ("DE", [ip_link]),
- ("DE", [evalstack_link]),
- ]
- def input_init(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- returnvalue_link, _input = \
- yield [("RDE", [task_frame, "returnvalue"]),
- ("RD", [task_root, "input"]),
- ]
- value, next, phase_link = \
- yield [("RD", [_input, "value"]),
- ("RD", [_input, "next"]),
- ("RDE", [task_frame, "phase"]),
- ]
- if value is not None:
- v = yield [("RV", [value])]
- _, _, finish = \
- yield [("CD", [task_frame, "returnvalue", value]),
- ("CD", [task_root, "input", next]),
- ("CNV", ["finish"]),
- ]
- _, _, _, _ = \
- yield [("CD", [task_frame, "phase", finish]),
- ("DN", [_input]),
- ("DE", [returnvalue_link]),
- ("DE", [phase_link]),
- ]
- self.input_value = value
- else:
- # No input yet, so just wait and don't advance IP or phase
- self.input_value = None
- self.success = False
- def output_init(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- evalstack, evalstack_link, ip_link, inst = \
- yield [("RD", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "evalstack"]),
- ("RDE", [task_frame, "IP"]),
- ("RD", [task_frame, "IP"]),
- ]
- value, new_evalstack, evalstack_phase = \
- yield [("RD", [inst, "value"]),
- ("CN", []),
- ("CNV", ["output"]),
- ]
- _, _, _, _, _, _, _ = \
- yield [("CD", [task_frame, "evalstack", new_evalstack]),
- ("CD", [new_evalstack, "prev", evalstack]),
- ("CD", [evalstack, "inst", inst]),
- ("CD", [evalstack, "phase", evalstack_phase]),
- ("CD", [task_frame, "IP", value]),
- ("DE", [evalstack_link]),
- ("DE", [ip_link]),
- ]
- def output_output(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- returnvalue_link, returnvalue, last_output, phase_link, last_output_link, new_last_output, finish = \
- yield [("RDE", [task_frame, "returnvalue"]),
- ("RD", [task_frame, "returnvalue"]),
- ("RD", [task_root, "last_output"]),
- ("RDE", [task_frame, "phase"]),
- ("RDE", [task_root, "last_output"]),
- ("CN", []),
- ("CNV", ["finish"]),
- ]
- _, _, _, _, _, _ = \
- yield [("CD", [last_output, "value", returnvalue]),
- ("CD", [last_output, "next", new_last_output]),
- ("CD", [task_root, "last_output", new_last_output]),
- ("CD", [task_frame, "phase", finish]),
- ("DE", [last_output_link]),
- ("DE", [phase_link]),
- ]
- def declare_init(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- inst, = yield [("RD", [task_frame, "IP"])]
- new_var, symbols, phase_link, empty_node, new_phase = \
- yield [("RD", [inst, "var"]),
- ("RD", [task_frame, "symbols"]),
- ("RDE", [task_frame, "phase"]),
- ("CN", []),
- ("CNV", ["finish"]),
- ]
- exists, = yield [("RDN", [symbols, new_var])]
- if exists is None:
- new_edge, = yield [("CE", [symbols, empty_node])]
- _ = yield [("CE", [new_edge, new_var])]
- _, _ = yield [("CD", [task_frame, "phase", new_phase]),
- ("DE", [phase_link]),
- ]
- def global_init(self, task_root):
- task_frame, = yield [("RD", [task_root, "frame"])]
- inst, = yield [("RD", [task_frame, "IP"])]
- new_var, global_symbols, phase_link, empty_node, new_phase = \
- yield [("RD", [inst, "var"]),
- ("RD", [task_root, "globals"]),
- ("RDE", [task_frame, "phase"]),
- ("CN", []),
- ("CNV", ["finish"]),
- ]
- value, = yield [("RV", [new_var])]
- exists, = yield [("RD", [global_symbols, value])]
- if exists is None:
- yield [("CD", [global_symbols, value, empty_node])]
- _, _ = yield [("CD", [task_frame, "phase", new_phase]),
- ("DE", [phase_link])
- ]
|